activity
19962003
most citedSpace-geometric interpretation of standard model fermions

1 citations · 1 across the 4 of their papers we have counts for

collaborators

13 papers

hep-lat2003

A doubler-free lattice theory for QCD based on geometric fermions

I. Schmelzer

We present doubler-free gauge-invariant lattice vector gauge action for some real representations of Wilson gauge fields on an octet of fermions. It is based on a geometric represe…

hep-th20031 cited

Space-geometric interpretation of standard model fermions

Ilja Schmelzer

Based on the geometric interpretation of the Dirac equation as an evolution equation on the three-dimensional exterior bundle /(R^3), we propose the bundle (T x / x /)(R^3) as a ge…

hep-th2002

A correspondence between standard model fermions and degrees of freedom of polycrystalline materials

I. Schmelzer

We identify natural degrees of freedom of polycrystalline materials -- affine transformations of grains -- with those of a three-dimensional lattice theory for $(T\otimesΩ)(\mathbb…

hep-lat2002

A Lattice Fermion Doublet With A Generalization Of The Ginsparg-Wilson Relation

I. Schmelzer

We present a new staggered discretization of the Dirac operator. In comparison with standard staggered fermions, real and imaginary parts are located in different nodes. Doubling g…

gr-qc2001

Derivation of the Einstein Equivalence Principle in a Class of Condensed Matter Theories

I. Schmelzer

We consider a class of condensed matter theories in a Newtonian framework with a Lagrange formalism related in a natural way with the classical conservation laws \partial_t ρ+ \par…

gr-qc2000

A Metric Theory of Gravity with Condensed Matter Interpretation

I. Schmelzer

We present a metric theory of gravity with Lagrangian L = (8πG)^{-1}(Ξg^{ii} - Υg^{00})\sqrt{-g} + L_{GR} + L_{matter} motivated by classical equations \partial_t ρ+ \partial_i (ρv…